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首页> 外文期刊>Colloid journal >Influence of cetyltrimethylammonium bromide aqueous solutions on the surface strength of quartz glass under conditions of pH variation
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Influence of cetyltrimethylammonium bromide aqueous solutions on the surface strength of quartz glass under conditions of pH variation

机译:pH变化条件下十六烷基三甲基溴化铵水溶液对石英玻璃表面强度的影响

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摘要

A mechanism of the combined influence of solutions of electrolytes with various pHs (in 10(-3) N KCl solution) and cetyltrimethylammonium bromide (CTAB) cationic surfactant on the surface strength of quartz glass in a mechanical contact is studied. A similar cation-active medium is shown to embrittle quartz glass in neutral and alkaline pH ranges. The brittle strength of a near-surface layer of a material decreases owing to adsorption and electrocapillary reduction of its surface energy. The surface strength of the glass decreases to the largest extent at the CTAB critical micellization concentration. At low concentrations (10-(6) M), a protective effect of forming chemisorbed CTAB layers prevails that is manifested in the hydrophobization of the surface of quartz glass by CTAB molecules and its screening from direct contact with an electrolyte solution. At the CTAB concentrations that are higher than the CMC, a formed micellar structure of CTAB has a lubricating effect, leading to softer boundary conditions of a frictional contact and a decreased probability of the damage of the near-surface layer of quartz glass. In acidic electrolyte solutions, CTAB cations or molecules did not affect the surface strength of quartz glass.
机译:研究了各种pH值的电解质溶液(在10(-3)N KCl溶液中)和十六烷基三甲基溴化铵(CTAB)阳离子表面活性剂对机械接触石英玻璃表面强度的综合影响机理。显示出类似的阳离子活性介质会在中性和碱性pH范围内使石英玻璃脆化。材料的近表层的脆性强度由于其表面能的吸附和电毛细管的降低而降低。在CTAB临界胶束化浓度下,玻璃的表面强度最大程度地降低。在低浓度(10-(6)M)下,形成化学吸附CTAB层的保护作用占主导地位,这表现为CTAB分子对石英玻璃表面进行了疏水化作用,并屏蔽了与电解质溶液的直接接触。在高于CMC的CTAB浓度下,形成的CTAB胶束结构具有润滑作用,导致摩擦接触的边界条件更柔和,并且降低了石英玻璃近表面层损坏的可能性。在酸性电解质溶液中,CTAB阳离子或分子不会影响石英玻璃的表面强度。

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